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Initial estimates of the economical attractiveness of a nuclear closed Brayton combined cycle operating with firebrick resistance-heated energy storage

机译:核密闭布雷顿联合循环与耐火砖电阻加热的储能一起运行的经济吸引力的初步估计

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The Firebrick Resistance-Heated Energy Storage (FIRES) concept developed by the Massachusetts Institute of Technology?aims to enhance profitability of the nuclear power industry in the next decades. Studies carried out at Massachusetts Institute of Technology already provide estimates of the potential revenue from FIRES system when it is applied to industrial heat supply, the likely first application. Here, we investigate the possibility of operating a power plant (PP) with a fluoride-salt-cooled high-temperature reactor and a closed Brayton cycle. This variant offers features such as enhanced nuclear safety as well as flexibility in design of the PP but also radically changes the way of operating the PP. This exploratory study provides estimates of the revenue generated by FIRES in addition to the nominal revenue of the stand-alone fluoride-salt-cooled high-temperature reactor, which are useful for defining an initial design. The electricity price data is based on the day-ahead markets of Germany/Austria and the United States (Iowa). The proposed method derives from the equation of revenue introduced in this study and involves simple computations using MatLab to compute the estimates. Results show variable economic potential depending on the host grid?but stress a high profitability in both regions.
机译:麻省理工学院开发的耐火砖电阻加热能量存储(FIRES)概念旨在在未来几十年内提高核电行业的盈利能力。麻省理工学院进行的研究已经提供了FIRES系统应用于工业供热(可能是首次应用)的潜在收益估算。在这里,我们研究了用氟化物盐冷却的高温反应堆和封闭的布雷顿循环运行电厂(PP)的可能性。该变体具有增强核安全性以及PP设计灵活性的功能,但也从根本上改变了PP的操作方式。这项探索性研究提供了对FIRES产生的收入的估算,以及独立氟化物-盐冷却的高温反应堆的名义收入,这对于定义初始设计很有用。电价数据基于德国/奥地利和美国(爱荷华州)的日间市场。所提出的方法源自本研究中引入的收入方程,并涉及使用MatLab进行的简单计算以计算估算值。结果表明,经济潜力取决于东道主电网,但同时强调了两个地区的高盈利能力。

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